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The formation of mouse coat color is a relatively complex developmental process that is affected by a large number of mutations, both naturally occurring and induced. The cloning of the genes in which these mutations occur and the elucidation of the mechanisms by which these mutations disrupt the normal pigmentation pattern is leading to an understanding of the way interactions between gene products lead to a final phenotype.  相似文献   
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After nest predation, breeding dispersal can be an effective strategy to avoid local nest predators. Furthermore, encounters with predators at a nest during the pre-laying stage may be used by parents to judge future risk, such that they may abandon a nest when a nest predator has been encountered. We studied whether the between- and within-year breeding dispersal of Northern Flickers Colaptes auratus was dependent upon the outcome of the previous nesting attempt. We also tested whether pairs presented with a model predator prior to egg-laying were more likely to abandon their nests than were pairs presented with a control model. Between years, males moved significantly further after having their nest depredated than did successful males, and females showed the same trend. However, these movements did not result in greater reproductive success. More pairs switched sites within years after having their nest depredated, but those that remained and those that moved had equal subsequent nest success. Stressful encounters with predators involving nest defence may trigger dispersal both between and within years, although reproductive benefits are unclear. The proportion of pairs abandoning nests did not differ between parents presented with control or predator models, suggesting that a single encounter with a predator is not a sufficient deterrent against continued use of a particular nest.  相似文献   
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The Light mutation (Blt) is a dominant allele of the b-locus on mouse chromosome 4 which causes progressive dilution of coat colour. Melanocytes within the hair follicles of mutant mice develop normally but later degenerate, due to the accumulation of a toxic product, so that the hair becomes lighter with age. Previous studies on W-locus spotting mutants, from which melanocytes are absent, have shown that melanocytes in the stria vascularis of the inner ear are essential for the development and/or maintenance of the endocochlear potential (EP) which is normally around 100 mV. In this study, physiological recordings from the ears of Light mutants were correlated with strial ultrastructure. EPs recorded from all b/b controls and young homozygous and heterozygous mutants (20–22 days old) were normal (77 to 113 mV), but were reduced (19 to 59 mV) in about 30% of ears from older mutants (Blt/Blt and Blt/b). Strial function therefore appears to develop normally but later degenerates in some mutants. This suggests that strial melanocytes are affected by the Light allele and that the continued presence of melanocytes is necessary for strial function. There was no obvious association between the recorded EP value and the ultrastructural appearance of the stria. No structural abnormalities of the stria were noted in control or mutant mice aged 20 days to 4 months including those which had a reduced EP. Strial atrophy was common in old controls and mutants (1–2 years), and appeared to be an age-related process rather than an effect of the Light mutation. Similarly, pigment build-up was common in all strial cells of old mice. However, the accumulations of lipofuscin-like pigment were much larger and more abundant in aged brown non-agouti mice than those observed in old agouti mice, which suggests that this age-related process also has a genetic component.  相似文献   
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1. Organisms can respond to changing climatic conditions in multiple ways including changes in phenology, body size or morphology, and range shifts. Understanding how developmental temperatures affect insect life‐history timing and morphology is crucial because body size and morphology affect multiple aspects of life history, including dispersal ability, whereas phenology can shape population performance and community interactions. 2. It was experimentally assessed how developmental temperatures experienced by aquatic larvae affected survival, phenology, and adult morphology of dragonflies [Pachydiplax longipennis (Burmeister)]. Larvae were reared under three environmental temperatures: ambient, +2.5, and +5 °C, corresponding to temperature projections for our study area 50 and 100 years in the future, respectively. Experimental temperature treatments tracked naturally‐occurring variation. 3. Clear effects of temperature were found in the rearing environment on survival and phenology: dragonflies reared at the highest temperatures had the lowest survival rates and emerged from the larval stage approximately 3 weeks earlier than animals reared at ambient temperatures. There was no effect of rearing temperature on overall body size. Although neither the relative wing nor thorax size was affected by warming, a non‐significant trend towards an interaction between sex and warming in relative thorax size suggests that males may be more sensitive to warming than females, a pattern that should be investigated further. 4. Warming strongly affected survival in the larval stage and the phenology of adult emergence. Understanding how warming in the developmental environment affects later life‐history stages is critical to interpreting the consequences of warming for organismal performance.  相似文献   
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Eight microsatellite loci were isolated from the lance‐tailed manakin (Chiroxiphia lanceolata), a polygynous lek‐breeding bird from Central America. Five of these loci were polymorphic (two to seven alleles per locus), with observed levels of heterozygosity ranging from 0.100 to 0.860 (n = 50 individuals). These variable loci provide a valuable tool for assessing patterns of parentage and relatedness within lance‐tailed manakin social groups.  相似文献   
18.
LIPID PHYSIOLOGY OF VESICULAR-ARBUSCULAR MYCORRHIZA   总被引:4,自引:4,他引:0  
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19.
Blue-green algae of the families Rivulariaceae, Oscillatoriaceae, Stigonemataceae and Nostochopsidaceae have been identified by scanning electron microscopy in Upper Jurassic (Malm δ) sponge reefs near Solnhofen-Eichstätt, southern Franconia. Algal growth may account for 50–75% of the volume of the reef limestone. 'Hollow-sphere' algal structures up to 500 µm predominate. Rivulariaceae are the typical form and act as main reef-building biotic component. Pellets, intraclasts and oncolites as well as stromatolitic and cryptalgal crusts are of blue-green algal origin. These observations introduce new aspects regarding the evolution of the siliceous-sponge reefs of the Upper Jurassic in Southern Germany.
Mit dem Rasterelektronenmikroskop wurden in der jurassischen Schwammfazies des Malm δ bei Solnhofen-Eichstätt Blaugrün-Algen der Familien Rivulariaceae, Oscillatoriaceae, Stigonemataceae und Nostochopsidaceae nachgewiesen. 50–75% des Riffkalkes ist direkt auf Algen zurückzuführen. Vorherrschend sind Hohlkugelkolonien bis 500 µm, die zu den Rivulariaceae gestellt werden und die wichtigste riffbildende Biogenkomponente darstellen. Pellets, Intraklasten, Onkoide, Stromatolithen und strukturlose Krusten auf den Schwämmen sind Algenprodukte. Es ergeben sich neue ökologische Aspekte für die Kieselschwamm-Riffe des Oberen Jura in Süddeutschland.  相似文献   
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